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Systems Biology Approach in Chlamydomonas Reveals Connections between Copper Nutrition and Multiple Metabolic Steps

机译:衣藻的系统生物学方法揭示了铜营养与多个代谢步骤之间的联系

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In this work, we query the Chlamydomonas reinhardtii copper regulon at a whole-genome level. Our RNA-Seq data simulation and analysis pipeline validated a 2-fold cutoff and 10 RPKM (reads per kilobase of mappable length per million mapped reads) (similar to 1 mRNA per cell) to reveal 63 CRR1 targets plus another 86 copper-responsive genes. Proteomic and immunoblot analyses captured 25% of the corresponding proteins, whose abundance was also dependent on copper nutrition, validating transcriptional regulation as a major control mechanism for copper signaling in Chlamydomonas. The impact of copper deficiency on the expression of several O-2-dependent enzymes included steps in lipid modification pathways. Quantitative lipid profiles indicated increased polyunsaturation of fatty acids on thylakoid membrane digalactosyldiglycerides, indicating a global impact of copper deficiency on the photosynthetic apparatus. Discovery of a putative plastid copper chaperone and a membrane protease in the thylakoid suggest a mechanism for blocking copper utilization in the chloroplast. We also found an example of copper sparing in the N assimilation pathway: the replacement of copper amine oxidase by a flavin-dependent backup enzyme. Forty percent of the targets are previously uncharacterized proteins, indicating considerable potential for new discovery in the biology of copper.
机译:在这项工作中,我们查询了全基因组水平上的莱茵衣藻铜调节剂。我们的RNA-Seq数据模拟和分析流程验证了2倍截止值和10个RPKM(每百万个碱基对的可映射长度每千碱基的碱基对的读数)(类似于每个细胞1个mRNA),可揭示63个CRR1目标以及另外86个铜响应基因。蛋白质组学和免疫印迹分析捕获了25%的相应蛋白质,其丰度也取决于铜营养,从而验证了转录调控是衣藻铜信号传导的主要控制机制。铜缺乏对几种O-2依赖性酶表达的影响包括脂质修饰途径中的步骤。定量脂质分布表明类囊体膜二半乳糖基二甘油酯上脂肪酸的多不饱和度增加,表明铜缺乏对光合装置的整体影响。在类囊体中发现假定的质体铜分子伴侣和膜蛋白酶提示了在叶绿体中阻止铜利用的机制。我们还在N同化途径中发现了铜保留的一个例子:用黄素依赖性备用酶替代铜胺氧化酶。 40%的靶标是以前未鉴定的蛋白质,表明在铜生物学中有新发现的巨大潜力。

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